Unique Deep Radiomic Signature Shows NMN Treatment Reverses Morphology of Oocytes from Aged Mice

Abbas Habibalahi1, Jared M Campbell1, Michael J Bertoldo2,3

  • 1ARC Centre of Excellence Centre for Nanoscale Biophotonics, University of New South Wales Sydney, Sydney, NSW 2052, Australia.

Biomedicines
|July 27, 2022
PubMed

Insights

A novel artificial intelligence (AI) model developed a deep radiomic signature (DRS) to detect oocyte aging. This AI tool accurately identified age-related changes and showed NMN therapy can restore oocyte quality.

Area of Science:

  • Reproductive Biology
  • Artificial Intelligence
  • Biomedical Imaging

Background:

  • Oocyte quality declines with maternal age, impacting fertility.
  • Artificial intelligence (AI) offers potential for analyzing complex biological data.
  • NAD+ precursors like NMN show promise in mitigating age-related fertility decline.

Purpose of the Study:

  • To develop a deep radiomic signature (DRS) using AI to identify oocyte morphological changes associated with reproductive aging.
  • To assess the accuracy of the DRS in distinguishing between young, aged, and NMN-treated aged oocytes.
  • To evaluate the efficacy of NMN treatment in rejuvenating aged oocytes using the DRS.

Main Methods:

  • Collected oocytes from young, aged, and NMN-treated aged mice.
  • Applied deep learning, swarm intelligence, and discriminative analysis to bright field microscopy images.
  • Developed and validated a deep radiomic signature (DRS) for oocyte morphology analysis.

Main Results:

  • The DRS accurately distinguished morphological changes in aged oocytes with 92% accuracy (AUC~1).
  • The DRS identified that 60% of oocytes from NMN-treated aged mice exhibited a 'young' morphology.
  • The AI-driven DRS effectively detected aging-related oocyte changes and restoration of quality.

Conclusions:

  • The developed DRS is a reliable tool for detecting aging-related oocyte morphological changes.
  • This AI-based approach can differentiate oocytes affected by reproductive aging.
  • The DRS demonstrates the potential of NMN therapy in restoring oocyte quality in aged mice.

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